水泵意外停机后海水沸腾特性的实验研究

Yuanjie Li, Shuai Ren, C. Pan
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引用次数: 1

摘要

由于水的低成本、广泛可用性和高热容量,它是大多数核电站最常用的冷却剂。在2011年3月11日强地震引发的海啸导致的福岛第一核电站事故中,发生了散热器的损失。此前被认为是替代冷却剂的海水,最终作为紧急措施被注入核反应堆长达一个多星期。在福岛第一核电站事故发生后,以海水为工作流体的换热特性的研究受到越来越多的关注。去离子水和海水的热物理性质(如密度、动态粘度和表面张力)的差异在换热过程中起着重要作用。此外,两种工质在沸腾过程中表现出不同的沸腾行为。与纯水相比,海水沸腾过程中气泡的直径可以小于水中。为了提高核反应堆电站的安全性,需要对海水作为备用应急冷却剂的换热机理进行深入研究。在本研究中,研究了泵突然关闭后带立管段环空间隙内的池沸腾实验。描述了用去离子水和3.5 wt%人工海水加热表面的换热特性。对每种流体的沸腾行为进行了比较和研究。
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Experimental Study of Boiling Characteristics of Seawater After an Accidental Shutdown of the Pump
Water is the most common working fluid using as the coolant for most of nuclear power plants due to its low cost, wide availability, and high heat capacity. In the Fukushima Daiichi accident caused by the tsunami following a powerful earthquake on 11th March 2011, the loss of heat sink occurred. Seawater, which had been considered as an alternative coolant before, was eventually injected into the nuclear reactor for more than one week as an emergency measure. The studies about the characteristics of heat transfer with the seawater as the working fluid have received much more attentions after the Fukushima Daiichi accident. The differences of thermophysical properties such as density, dynamic viscosity, and surface tension, between deionized water and seawater play an important role in the heat transfer. In addition, different boiling behaviors exhibit in the boiling process for two types of working fluid. Compared to pure water, the diameter of bubbles in seawater during pool boiling could be smaller than in water. To improve the safety of a nuclear reactor power plant, mechanisms of the heat transfer using seawater as an alternative emergency coolant should be studied thoroughly. In the present research, experiments of pool boiling in an annulus gap with a riser section after the sudden shutdown of the pump are investigated. Heat transfer characteristic of the heated surface using DI water and 3.5 wt% artificial seawater are described. Boiling behaviors at each fluid are compared and studied.
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